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An Anisotropic Acoustic Wave Equation for VTI Media

机译:VTI介质的各向异性声波方程

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Here we propose a new anisotropic acoustic wave equation based on the same dispersion relation as Alkhalifah's (2000), but introducing an auxiliary function which allows the original fourth-order differential equation to become a coupled system of lower-order differential equations. Of these two equations, one equation can be considered as a hyperbolic wave equation for elliptical anisotropy, but with a correction term that compensates for the loss of anisotropy for VTI media, while the other can be considered as the additional expansion or contraction of the wavefront in the lateral directions. This two-way anisotropic wave equation can be used for both modeling and reverse-time migration.rnThe new anisotropic acoustic equation has the obvious physical meaning and is much easier to implement. Impulse responses for both modeling and migration have been shown to validate the proposed anisotropic acoustic equation.
机译:在这里,我们基于与Alkhalifah(2000)相同的色散关系,提出了一个新的各向异性声波方程,但是引入了一个辅助函数,该函数使原始的四阶微分方程成为低阶微分方程的耦合系统。在这两个方程中,一个方程可被视为椭圆各向异性的双曲波方程,但具有可补偿VTI介质各向异性损失的校正项,而另一个方程可被视为波阵面的附加膨胀或收缩在横向上。该双向各向异性波动方程可用于建模和逆时偏移。新的各向异性声学方程具有明显的物理意义,易于实现。建模和迁移的脉冲响应已被证明可以验证所提出的各向异性声学方程。

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